Based on the following diagram for a diatomic ideal gas, which of the following statements are true (Select all that apply): The y-axis represents Cv.m/R 3 CIR 2 1 0 T 50 100 200 500 1000 2000 T/K 5000 10,000 Adding 100 J of energy to 1 mol of the diatomic ideal gas leads to a smaller increase in the temperature of the gas if the addition is done at 5000K than if it is done at 50 K Vibrational motion contributes to Cv at T = 50 K Above 5000 K the gas cannot be heated Translation motion contributes to Cv,m at T = 50 K Adding 100 J of energy to 1 mol of the diatomic ideal gas leads to a larger increase in the temperature of the gas if the addition is done at 5000K than if it is done at 50 K

Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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can you explain how this problem is done? I understand why options 1 and 4 are correct using the diagram but i don't quite understand why option 3 isn't also correct. do you mind breaking it down for me each option. thanks

Based on the following diagram for a diatomic ideal gas, which of the following statements are true (Select
all that apply):
The y-axis represents Cv.m/R
3
CIR 2
1
0
T
50
100 200
500 1000 2000
T/K
5000 10,000
Adding 100 J of energy to 1 mol of the diatomic ideal gas leads to a smaller increase in the
temperature of the gas if the addition is done at 5000K than if it is done at 50 K
Vibrational motion contributes to Cv at T = 50 K
Above 5000 K the gas cannot be heated
Translation motion contributes to Cv,m at T = 50 K
Adding 100 J of energy to 1 mol of the diatomic ideal gas leads to a larger increase in the
temperature of the gas if the addition is done at 5000K than if it is done at 50 K
Transcribed Image Text:Based on the following diagram for a diatomic ideal gas, which of the following statements are true (Select all that apply): The y-axis represents Cv.m/R 3 CIR 2 1 0 T 50 100 200 500 1000 2000 T/K 5000 10,000 Adding 100 J of energy to 1 mol of the diatomic ideal gas leads to a smaller increase in the temperature of the gas if the addition is done at 5000K than if it is done at 50 K Vibrational motion contributes to Cv at T = 50 K Above 5000 K the gas cannot be heated Translation motion contributes to Cv,m at T = 50 K Adding 100 J of energy to 1 mol of the diatomic ideal gas leads to a larger increase in the temperature of the gas if the addition is done at 5000K than if it is done at 50 K
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